Effects of the Deep Pool on Groundwater Flow and Salinization in Coastal Reservoir and Adjacent Aquifer

被引:0
作者
Yuming Mo
Guangqiu Jin
Chenming Zhang
Jing Xu
Hongwu Tang
Chengji Shen
Alexander Scheuermann
Ling Li
机构
[1] Hohai University,State Key Laboratory of Hydrology
[2] Hohai University,Water Resources and Hydraulic Engineering
[3] The University of Queensland,College of Water Conservancy and Hydropower Engineering
[4] Yangzhou University,School of Civil Engineering
[5] Hohai University,College of Hydraulic Science and Engineering
[6] Westlake University,College of Harbour, Coastal and Offshore Engineering
来源
Water Resources Management | 2021年 / 35卷
关键词
Coastal reservoir; Deep pool; Groundwater flow; Salinization; Seawater intrusion;
D O I
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中图分类号
学科分类号
摘要
Coastal reservoirs can alleviate freshwater shortages occurring in the nearshore zone. Deep pools patched at the bottom of reservoirs at greater depths than their adjacent beds maintain a high salinity and possibly provide preferential paths for saltwater backfill. However, such processes are not well understood. Laboratory experiments and numerical simulations were conducted to investigate the effect of the deep pool on subsurface flow and the salinization of coastal reservoir and adjacent aquifers. When seawater intruded into the initially fresh aquifer, the deep pool accelerated the uptake of saltwater to the reservoir from the salt wedge, forming a temporary salt plume around the pool. The saltwater plume also accelerated salt ingress and the evolution of the total salt mass in the coastal reservoir, resulting in the earlier attainment of a quasi-steady state (a classical saltwater wedge) than that when the deep pool was absent. Under steady-state conditions, the deep pool greatly enhanced the exchange of water across the reservoir-aquifer interface by 107% and raised the salinization level of the coastal reservoir by at least 10.3%. Sensitivity analysis suggested that a deeper pool and/or a pool located closer to the reservoir dam may enhance the water exchange and salinity level in the reservoir because it accelerates the water/salt inflow to the freshwater body to a greater extent. These findings may further contribute to improving the predictability and management of water quality in these coastal facilities.
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页码:2667 / 2684
页数:17
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